首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Dynamics of C, N and P in soil amended with biosolids from a pharmaceutical industry producing cephalosporines or third generation antibiotics: A laboratory study
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Dynamics of C, N and P in soil amended with biosolids from a pharmaceutical industry producing cephalosporines or third generation antibiotics: A laboratory study

机译:实验室研究研究了用生产头孢菌素或第三代抗生素的制药行业的生物固体对土壤中C,N和P的动态变化

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Large parts of the central highlands of Mexico are heavily eroded and the success of a planned reforestation program will greatly improve when the organic matter and nutrient content of the soil increases prior to the planting of the trees. This study investigated how the application of biosolids from a pharmaceutical company producing cephalosporines or third generation antibiotics could be used as a soil amendment and affect dynamics of C, P and N in soil. A sandy clay loam soil was sampled, amended with 24 g of dry biosolids kg(-1) dry soil or approximately 32 x 10 3 kg ha(-1) for the 0-10 cm layer, and incubated aerobically while production of carbon dioxide (CO2) dynamics of ammonium (NH4+),nitrite (NO2-), nitrate (NO3-), sodium bicarbonate (NaHCO3) extractable phosphorus (PO43-), and microbial biomass carbon (C) were monitored. Results showed that the biosolid with pH 12, organic C content 162 g kg(-1), total N 21 g kg(-1), was of excellent quality considering its heavy metal content (USEPA) and a class "B" (USEPA) biosolid considering the amount of pathogens. No cephalosporines could be detected in the biosolid. Addition of biosolid to soil increased production Of CO2 1.4 times and added > 60 mg NH4+ kg(-1). The application of biosolids did not significantly increase the concentration of NO2- which remained < 2 mg N kg(-1) soil, but the concentration of NO3- did increase with 175 mg N kg(-1) soil. The microbial biomass C did not change when sewage biosolids was added and concentrations of extractable PO43- only increased temporarily. Washing the biosolids reduced concentrations of NH4+ and NO3-, but also reduced pathogens and concentrations of chloride (Cl-), which might pose a treat to humans and the environment, respectively. Although the biosolid added valuable nutrients to the soil and did not inhibit C and N mineralization, further investigation into possible long-term environmental effects on soil processes and plant growth is necessary before this biosolid can be used in the field. (c) 2005 Published by Elsevier Ltd.
机译:墨西哥中部高地的大部分地区受到严重侵蚀,如果在植树之前增加土壤的有机质和养分含量,计划中的造林计划的成功将大大提高。这项研究调查了生产头孢菌素或第三代抗生素的制药公司的生物固体的应用如何用作土壤改良剂并影响土壤中C,P和N的动力学。取样砂质壤土,用24 g干燥的生物固体kg(-1)干燥土壤或0-10 cm层的约32 x 10 3 kg ha(-1)进行修正,并在产生二氧化碳的条件下进行需氧培养监测铵(NH4 +),亚硝酸盐(NO2-),硝酸盐(NO3-),碳酸氢钠(NaHCO3)可萃取磷(PO43-)和微生物生物量碳(C)的(CO2)动态。结果表明,考虑到其重金属含量(USEPA)和“ B”级(USEPA),pH 12,有机碳含量162 g kg(-1),总N 21 g kg(-1)的生物固体具有优异的质量。 )考虑病原体数量的生物固体。在生物固体中未检测到头孢菌素。向土壤中添加生物固体可增加CO2产量1.4倍,并添加> 60 mg NH4 + kg(-1)。生物固体的应用并没有显着增加仍然小于2 mg N kg(-1)土壤的NO2-浓度,但是随着175 mg N kg(-1)土壤的NO3-浓度确实增加了。当添加污水生物固体时,微生物生物量C不变,而可提取的PO43-的浓度仅暂时增加。洗涤生物固体减少了NH4 +和NO3-的浓度,但也减少了病原体和氯离子(Cl-)的浓度,这可能分别对人类和环境造成危害。尽管该生物固体向土壤中添加了宝贵的养分,并且没有抑制C和N矿化,但是在将该生物固体用于田间之前,有必要进一步研究对土壤过程和植物生长的长期环境影响。 (c)2005由爱思唯尔有限公司出版。

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